Mms2-Ubc13 covalently bound to ubiquitin reveals the structural basis of linkage-specific polyubiquitin chain formation

被引:283
作者
Eddins, Michael J.
Carlile, Candice M.
Gomez, Kamila M.
Pickart, Cecile M.
Wolberger, Cynthia [1 ]
机构
[1] Johns Hopkins Univ, Sch Med, Howard Hughes Med Inst, Dept Biophys & Biophys Chem, Baltimore, MD 21205 USA
[2] Johns Hopkins Univ, Bloomberg Sch Publ Hlth, Dept Biochem & Mol Biol, Baltimore, MD 21205 USA
关键词
D O I
10.1038/nsmb1148
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Lys63-linked polyubiquitin chains participate in nonproteolytic signaling pathways, including regulation of DNA damage tolerance and NF-kappa B activation. E2 enzymes bound to ubiquitin E2 variants (UEV) are vital in these pathways, synthesizing Lys63-linked polyubiquitin chains, but how these complexes achieve specificity for a particular lysine linkage has been unclear. We have determined the crystal structure of an Mms2-Ubc13-ubiquitin (UEV-E2-Ub) covalent intermediate with donor ubiquitin linked to the active site residue of Ubc13. In the structure, the unexpected binding of a donor ubiquitin of one Mms2-Ubc13-Ub complex to the acceptor-binding site of Mms2-Ubc13 in an adjacent complex allows us to visualize at atomic resolution the molecular determinants of acceptor-ubiquitin binding. The structure reveals the key role of Mms2 in allowing selective insertion of Lys63 into the Ubc13 active site and suggests a molecular model for polyubiquitin chain elongation.
引用
收藏
页码:915 / 920
页数:6
相关论文
共 33 条
[1]   Distinct regulation of Ubc13 functions by the two ubiquitin-conjugating enzyme variants Mms2 and Uev1A [J].
Andersen, PL ;
Zhou, HL ;
Pastushok, L ;
Moraes, T ;
McKenna, S ;
Ziola, B ;
Ellison, MJ ;
Dixit, VM ;
Xiao, W .
JOURNAL OF CELL BIOLOGY, 2005, 170 (05) :745-755
[2]  
Brunger AT, 1998, ACTA CRYSTALLOGR D, V54, P905, DOI 10.1107/s0907444998003254
[3]   Ubiquitin signalling in the NF-κB pathway [J].
Chen, ZJJ .
NATURE CELL BIOLOGY, 2005, 7 (08) :758-U19
[4]   Activation of the IκB kinase complex by TRAF6 requires a dimeric ubiquitin-conjugating enzyme complex and a unique polyubiquitin chain [J].
Deng, L ;
Wang, C ;
Spencer, E ;
Yang, LY ;
Braun, A ;
You, JX ;
Slaughter, C ;
Pickart, C ;
Chen, ZJ .
CELL, 2000, 103 (02) :351-361
[5]   Coot:: model-building tools for molecular graphics [J].
Emsley, P ;
Cowtan, K .
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 2004, 60 :2126-2132
[6]   Structure and function of ubiquitin conjugating enzyme E2-25K: The tail is a core-dependent activity element [J].
Haldeman, MT ;
Xia, G ;
Kasperek, EM ;
Pickart, CM .
BIOCHEMISTRY, 1997, 36 (34) :10526-10537
[7]   Structure of a conjugating enzyme-ubiquitin thiolester intermediate reveals a novel role for the ubiquitin tail [J].
Hamilton, KS ;
Ellison, MJ ;
Barber, KR ;
Williams, RS ;
Huzil, JT ;
McKenna, S ;
Ptak, C ;
Glover, M ;
Shaw, GS .
STRUCTURE, 2001, 9 (10) :897-904
[8]   The ubiquitin system [J].
Hershko, A ;
Ciechanover, A .
ANNUAL REVIEW OF BIOCHEMISTRY, 1998, 67 :425-479
[9]   Regulation of membrane protein transport by ubiquitin and ubiquitin-binding proteins [J].
Hicke, L ;
Dunn, R .
ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 2003, 19 :141-172
[10]   Noncanonical MMS2-encoded ubiquitin-conjugating enzyme functions in assembly of novel polyubiquitin chains for DNA repair [J].
Hofmann, RM ;
Pickart, CM .
CELL, 1999, 96 (05) :645-653